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211 lines
6.6 KiB
211 lines
6.6 KiB
/* Copyright (c) 2018 PaddlePaddle Authors. All Rights Reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License. */
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#include "paddle/fluid/operators/pad_constant_like_op.h"
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namespace paddle {
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namespace operators {
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using framework::Tensor;
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class PadConstantLikeOp : public framework::OperatorWithKernel {
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public:
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using framework::OperatorWithKernel::OperatorWithKernel;
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void InferShape(framework::InferShapeContext *ctx) const override {
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PADDLE_ENFORCE(ctx->HasInput("X"),
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"Input(X) of PadConstantLikeOp should not be null.");
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PADDLE_ENFORCE(ctx->HasInput("Y"),
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"Input(Y) of PadConstantLikeOp should not be null.");
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PADDLE_ENFORCE(ctx->HasOutput("Out"),
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"Output(Out) of PadConstantLikeOp should not be null.");
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auto x_dim = ctx->GetInputDim("X");
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auto y_dim = ctx->GetInputDim("Y");
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PADDLE_ENFORCE_EQ(x_dim.size(), y_dim.size(),
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"The dimention of X and Y should be the same.");
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for (int i = 0; i < x_dim.size(); ++i) {
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PADDLE_ENFORCE_GE(x_dim[i], y_dim[i]);
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}
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ctx->SetOutputDim("Out", x_dim);
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ctx->ShareLoD("X", /*->*/ "Out");
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}
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protected:
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framework::OpKernelType GetExpectedKernelType(
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const framework::ExecutionContext &ctx) const override {
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return framework::OpKernelType(ctx.Input<Tensor>("Y")->type(),
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ctx.device_context());
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}
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};
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class PadConstantLikeOpMaker : public framework::OpProtoAndCheckerMaker {
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public:
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void Make() override {
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AddInput("X",
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"The input of pad_constant_like op. "
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"The input should be a k-D tensor(k > 0 and k < 7)");
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AddInput("Y",
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"The input of pad_constant_like op. "
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"The input should be a k-D tensor(k > 0 and k < 7)");
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AddOutput("Out",
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"The output of pad_constant_like op. "
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"A tensor with the same shape as X.");
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AddAttr<float>("pad_value",
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"(float, default 0.0) "
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"The value to fill the padded areas.")
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.SetDefault(0.0f);
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AddComment(R"DOC(
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PadConstantLikeOp Operator.
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Pad input(Y) with a pad_value, the number of values padded to the edges of each
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axis is specified by the difference of the shape of X and Y.
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((0, shape_x_0 - shape_y_0), ... (0, shape_x_n - shape_y_n)) unique pad widths for
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each axis.
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The input should be a k-D tensor(k > 0 and k < 7). As an example:
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case1:
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Given:
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X = [[1, 2],
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[3, 4],
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[1, 2],
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[3, 4]]],
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X.shape = (4, 2)
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Y = [[5, 6],
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[7, 8]],
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Y.shape = (2, 2)
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And
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pad_value = 0,
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Return:
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Out = [[5, 6],
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[7, 8],
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[0, 0],
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[0, 0]]
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Out.shape = (4, 2)
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case2:
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Given:
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X = [[[[ 0, 1, 2],
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[ 3, 4, 5]],
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[[ 6, 7, 8],
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[ 9, 10, 11]],
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[[12, 13, 14],
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[15, 16, 17]]],
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[[[18, 19, 20],
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[21, 22, 23]],
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[[24, 25, 26],
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[27, 28, 29]],
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[[30, 31, 32],
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[33, 34, 35]]]]
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X.shape = (2, 3, 2, 3)
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Y = [[[[35, 36, 37]],
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[[38, 39, 40]],
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[[41, 42, 43]]]]
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Y.shape = (1, 3, 1, 3)
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And
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pad_value = -1,
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Return:
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Out = [[[[35, 36, 37],
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[-1, -1, -1]],
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[[38, 39, 40],
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[-1, -1, -1]],
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[[41, 42, 43],
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[-1, -1, -1]]],
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[[[-1, -1, -1],
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[-1, -1, -1]],
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[[-1, -1, -1],
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[-1, -1, -1]],
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[[-1, -1, -1],
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[-1, -1, -1]]]]
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Out.shape = (2, 3, 2, 3)
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)DOC");
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}
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};
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class PadConstantLikeOpGrad : public framework::OperatorWithKernel {
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public:
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using framework::OperatorWithKernel::OperatorWithKernel;
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void InferShape(framework::InferShapeContext *ctx) const override {
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PADDLE_ENFORCE(ctx->HasInput("Y"), "Input(Y) should not be null");
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PADDLE_ENFORCE(ctx->HasInput(framework::GradVarName("Out")),
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"Input(Out@GRAD) should not be null");
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auto y_dim = ctx->GetInputDim("Y");
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auto dout_dim = ctx->GetInputDim(framework::GradVarName("Out"));
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PADDLE_ENFORCE_EQ(dout_dim.size(), y_dim.size(),
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"The dimention of X and Y should be the same.");
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auto y_grad_name = framework::GradVarName("Y");
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if (ctx->HasOutput(y_grad_name)) {
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ctx->SetOutputDim(y_grad_name, y_dim);
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ctx->ShareLoD("Y", /*->*/ y_grad_name);
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for (int i = 0; i < y_dim.size(); ++i) {
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PADDLE_ENFORCE_GE(dout_dim[i], y_dim[i]);
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}
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}
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}
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protected:
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framework::OpKernelType GetExpectedKernelType(
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const framework::ExecutionContext &ctx) const override {
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return framework::OpKernelType(ctx.Input<Tensor>("Y")->type(),
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ctx.device_context());
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}
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};
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class PadConstantLikeOpGradMaker : public framework::SingleGradOpDescMaker {
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public:
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using framework::SingleGradOpDescMaker::SingleGradOpDescMaker;
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protected:
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std::unique_ptr<framework::OpDesc> Apply() const override {
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auto *bind = new framework::OpDesc();
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bind->SetType("pad_constant_like_grad");
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bind->SetInput("Y", Input("Y"));
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bind->SetInput(framework::GradVarName("Out"), OutputGrad("Out"));
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bind->SetOutput(framework::GradVarName("Y"), InputGrad("Y"));
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bind->SetAttrMap(Attrs());
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return std::unique_ptr<framework::OpDesc>(bind);
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}
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};
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} // namespace operators
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} // namespace paddle
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namespace ops = paddle::operators;
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REGISTER_OPERATOR(pad_constant_like, ops::PadConstantLikeOp,
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ops::PadConstantLikeOpMaker, ops::PadConstantLikeOpGradMaker);
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REGISTER_OPERATOR(pad_constant_like_grad, ops::PadConstantLikeOpGrad);
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REGISTER_OP_CPU_KERNEL(
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pad_constant_like,
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ops::PadConstantLikeKernel<paddle::platform::CPUDeviceContext, float>,
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ops::PadConstantLikeKernel<paddle::platform::CPUDeviceContext, double>);
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REGISTER_OP_CPU_KERNEL(
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pad_constant_like_grad,
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ops::PadConstantLikeGradKernel<paddle::platform::CPUDeviceContext, float>,
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ops::PadConstantLikeGradKernel<paddle::platform::CPUDeviceContext, double>);
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